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Numerical investigation of single-blow transient testing technique

机译:单吹瞬态测试技术的数值研究

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摘要

The single-blow transient testing technique has been used for more than 50 years, and many correlations have been proposed from this technique. However, these correlations differ significantly from one another and the behind reasons are still unknown. In this study, we used numerical simulation to detect the detailed temperature evolution of an entire porous matrix during the single-blow experiment. The numerical simulation was performed on a three-dimensional geometry with idealized packed tetrakaidecahedron structures, and the numerical method was based on three-dimensional RANS equations. The initial and boundary conditions of the simulation were the same as those of the single-blow transient testing technique. The detailed temperature evolution of the sample and air stream was obtained. Computational results indicated a local thermal equilibrium region inside the porous matrix during the single-blow transient experiment. The local thermal equilibrium is affected by the sample thickness, superficial velocity, and thermal capacity. The "local thermal equilibrium" inside the porous matrix during the single-blow transient test contradicts the prerequisites of this measurement method. This finding is validated by experimental data and is crucial to heat transfer inside porous media, as well as to the design and optimization of heat exchangers, volumetric solar receivers, and thermal storage systems.
机译:单吹瞬态测试技术已被使用超过50年,并且从该技术提出了许多相关性。然而,这些相关性彼此显着差异,后面的原因仍然未知。在这项研究中,我们使用数值模拟在单击实验期间检测整个多孔基质的详细温度演变。在具有理想化的填充四面型的三维几何形状上执行数值模拟,并且数值方法基于三维RAN方程。模拟的初始和边界条件与单吹瞬态测试技术的初始条件相同。获得样品和空气流的详细温度演变。计算结果在单吹瞬态实验期间表示多孔基质内的局部热平衡区域。局部热平衡受样品厚度,浅表速度和热容量的影响。单吹瞬态试验期间多孔基质内的“局部热平衡”与该测量方法的先决条件相矛盾。该发现由实验数据验证,并且对多孔介质内的传热至关重要,以及热交换器,体积太阳能接收器和热存储系统的设计和优化。

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  • 来源
    《International Communications in Heat and Mass Transfer》 |2021年第1期|105023.1-105023.12|共12页
  • 作者单位

    The Key Laboratory of Solar Thermal Energy and Photovoltaic System IEE-CAS No.6 Beiertiao Zhongguancun Beijing 100190 China;

    Institute of Thermal Engineering School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China;

    Institute of Thermal Engineering School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China;

    The Key Laboratory of Solar Thermal Energy and Photovoltaic System IEE-CAS No.6 Beiertiao Zhongguancun Beijing 100190 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Single-blow method; Porous media; Idealized tetrakaidecahedron; Local thermal nonequilibrium; CFD;

    机译:单吹法;多孔介质;理想化的四面八方面;局部热非预纤维;差价合约;
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